Influence of neutron irradiation on holmium acetylacetonate loaded poly(L-lactic acid) microspheres

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Influence of neutron irradiation on holmium acetylacetonate loaded poly(L-lactic acid) microspheres. / Nijsen, J F; van Het Schip, A D; van Steenbergen, M J; Zielhuis, S W; Kroon-Batenburg, L M J; van de Weert, Marco; van Rijk, P P; Hennink, W E.

In: Biomaterials, Vol. 23, No. 8, 04.2002, p. 1831-9.

Research output: Contribution to journalJournal articleResearchpeer-review

Harvard

Nijsen, JF, van Het Schip, AD, van Steenbergen, MJ, Zielhuis, SW, Kroon-Batenburg, LMJ, van de Weert, M, van Rijk, PP & Hennink, WE 2002, 'Influence of neutron irradiation on holmium acetylacetonate loaded poly(L-lactic acid) microspheres', Biomaterials, vol. 23, no. 8, pp. 1831-9.

APA

Nijsen, J. F., van Het Schip, A. D., van Steenbergen, M. J., Zielhuis, S. W., Kroon-Batenburg, L. M. J., van de Weert, M., van Rijk, P. P., & Hennink, W. E. (2002). Influence of neutron irradiation on holmium acetylacetonate loaded poly(L-lactic acid) microspheres. Biomaterials, 23(8), 1831-9.

Vancouver

Nijsen JF, van Het Schip AD, van Steenbergen MJ, Zielhuis SW, Kroon-Batenburg LMJ, van de Weert M et al. Influence of neutron irradiation on holmium acetylacetonate loaded poly(L-lactic acid) microspheres. Biomaterials. 2002 Apr;23(8):1831-9.

Author

Nijsen, J F ; van Het Schip, A D ; van Steenbergen, M J ; Zielhuis, S W ; Kroon-Batenburg, L M J ; van de Weert, Marco ; van Rijk, P P ; Hennink, W E. / Influence of neutron irradiation on holmium acetylacetonate loaded poly(L-lactic acid) microspheres. In: Biomaterials. 2002 ; Vol. 23, No. 8. pp. 1831-9.

Bibtex

@article{b6bb448d29854cecb31fb2d625967d92,
title = "Influence of neutron irradiation on holmium acetylacetonate loaded poly(L-lactic acid) microspheres",
abstract = "Holmium-loaded microspheres are useful systems in radio-embolization therapy of liver metastases. For administration to a patient, the holmium-loaded microspheres have to be irradiated in a nuclear reactor to become radioactive. In this paper. the influence of neutron irradiation on poly(L-lactic acid) (PLLA) microspheres and films, with or without holmium acetylacetonate (HoAcAc), is investigated, in particular using differential scanning calorimetry (MDSC), scanning electron microscopy, gel permeation chromatography (GPC), infrared spectroscopy, and X-ray diffraction. After irradiation of the microspheres, only minor surface changes were seen using scanning electron microscopy, and the holmium complex remained immobilized in the polymer matrix as reflected by a relatively small release of this complex. GPC and MDSC measurements showed a decrease in molecular weight and crystallinity of the PLLA, respectively, which can be ascribed to radiation induced chain scission. Irradiation of the HoAcAc loaded PLLA matrices resulted in evaporation of the non-coordinated and one coordinated water molecule of the HoAcAc complex, as evidenced by MDSC and X-ray diffraction analysis. Infrared spectroscopy indicated that some degradation of the acetylacetonate anion occurred after irradiation. Although some radiation induced damage of both the PLLA matrix and the embedded HoAcAc-complex occurs, the microspheres retain their favourable properties (no marginal release of Ho, preservation of the microsphere size), which make these systems interesting candidates for the treatment of tumours by radio-embolization.",
author = "Nijsen, {J F} and {van Het Schip}, {A D} and {van Steenbergen}, {M J} and Zielhuis, {S W} and Kroon-Batenburg, {L M J} and {van de Weert}, Marco and {van Rijk}, {P P} and Hennink, {W E}",
year = "2002",
month = apr,
language = "English",
volume = "23",
pages = "1831--9",
journal = "Biomaterials",
issn = "0142-9612",
publisher = "Elsevier",
number = "8",

}

RIS

TY - JOUR

T1 - Influence of neutron irradiation on holmium acetylacetonate loaded poly(L-lactic acid) microspheres

AU - Nijsen, J F

AU - van Het Schip, A D

AU - van Steenbergen, M J

AU - Zielhuis, S W

AU - Kroon-Batenburg, L M J

AU - van de Weert, Marco

AU - van Rijk, P P

AU - Hennink, W E

PY - 2002/4

Y1 - 2002/4

N2 - Holmium-loaded microspheres are useful systems in radio-embolization therapy of liver metastases. For administration to a patient, the holmium-loaded microspheres have to be irradiated in a nuclear reactor to become radioactive. In this paper. the influence of neutron irradiation on poly(L-lactic acid) (PLLA) microspheres and films, with or without holmium acetylacetonate (HoAcAc), is investigated, in particular using differential scanning calorimetry (MDSC), scanning electron microscopy, gel permeation chromatography (GPC), infrared spectroscopy, and X-ray diffraction. After irradiation of the microspheres, only minor surface changes were seen using scanning electron microscopy, and the holmium complex remained immobilized in the polymer matrix as reflected by a relatively small release of this complex. GPC and MDSC measurements showed a decrease in molecular weight and crystallinity of the PLLA, respectively, which can be ascribed to radiation induced chain scission. Irradiation of the HoAcAc loaded PLLA matrices resulted in evaporation of the non-coordinated and one coordinated water molecule of the HoAcAc complex, as evidenced by MDSC and X-ray diffraction analysis. Infrared spectroscopy indicated that some degradation of the acetylacetonate anion occurred after irradiation. Although some radiation induced damage of both the PLLA matrix and the embedded HoAcAc-complex occurs, the microspheres retain their favourable properties (no marginal release of Ho, preservation of the microsphere size), which make these systems interesting candidates for the treatment of tumours by radio-embolization.

AB - Holmium-loaded microspheres are useful systems in radio-embolization therapy of liver metastases. For administration to a patient, the holmium-loaded microspheres have to be irradiated in a nuclear reactor to become radioactive. In this paper. the influence of neutron irradiation on poly(L-lactic acid) (PLLA) microspheres and films, with or without holmium acetylacetonate (HoAcAc), is investigated, in particular using differential scanning calorimetry (MDSC), scanning electron microscopy, gel permeation chromatography (GPC), infrared spectroscopy, and X-ray diffraction. After irradiation of the microspheres, only minor surface changes were seen using scanning electron microscopy, and the holmium complex remained immobilized in the polymer matrix as reflected by a relatively small release of this complex. GPC and MDSC measurements showed a decrease in molecular weight and crystallinity of the PLLA, respectively, which can be ascribed to radiation induced chain scission. Irradiation of the HoAcAc loaded PLLA matrices resulted in evaporation of the non-coordinated and one coordinated water molecule of the HoAcAc complex, as evidenced by MDSC and X-ray diffraction analysis. Infrared spectroscopy indicated that some degradation of the acetylacetonate anion occurred after irradiation. Although some radiation induced damage of both the PLLA matrix and the embedded HoAcAc-complex occurs, the microspheres retain their favourable properties (no marginal release of Ho, preservation of the microsphere size), which make these systems interesting candidates for the treatment of tumours by radio-embolization.

M3 - Journal article

C2 - 11950053

VL - 23

SP - 1831

EP - 1839

JO - Biomaterials

JF - Biomaterials

SN - 0142-9612

IS - 8

ER -

ID: 45184780